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A Continuous-State Coalescent and the Impact of Weak Selection on the Structure of Gene Genealogies

机译:连续状态合并和弱选择对基因谱系结构的影响

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摘要

Coalescent theory provides an elegant and powerful method for understanding the shape of gene genealogies and resulting patterns of genetic diversity. However, the coalescent does not naturally accommodate the effects of heritable variation in fitness. Although some methods are available for studying the effects of strong selection (Ns ≫ 1), few tools beyond forward simulation are available for quantifying the impact of weak selection at many sites. Here, we introduce a continuous-state coalescent capable of accurately describing the distortions to genealogies caused by moderate to weak natural selection affecting many linked sites. We calculate approximately the full distribution of pairwise coalescent times, the lengths of coalescent intervals, and the time to the most recent common ancestor of a sample. Weak selection (Ns ≈ 1) is found to substantially decrease the tree depth, primarily through a shortening of the lengths of the basal coalescent intervals. Additionally, we demonstrate that only two parameters, population size and the variance of the distribution describing fitness heritability, are sufficient to describe most changes.
机译:联合理论为理解基因谱系的形状和由此产生的遗传多样性模式提供了一种优雅而强大的方法。但是,合并不会自然适应适应性的遗传变化。尽管有一些方法可以用来研究强选择的影响(Ns≫ 1),但是除了正演模拟之外,很少有工具可以用来量化许多地方的弱选择的影响。在这里,我们介绍了一种连续状态的联合体,该联合体能够准确地描述由于中度到较弱的自然选择影响许多链接位点而导致的家谱扭曲。我们近似计算成对合并时间的完整分布,合并间隔的长度以及到样本的最近共同祖先的时间。发现弱选择(Ns≈1)主要通过缩短基础合并间隔的长度来显着减小树的深度。此外,我们证明只有两个参数,种群大小和描述适合度遗传力的分布方差,足以描述大多数变化。

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